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Fabrication of covalently functionalized graphene oxide incorporated solid-state hybrid silica gel glasses and their improved nonlinear optical response

机译:含共价官能化氧化石墨烯的固态杂化硅胶玻璃的制备及其改善的非线性光学响应

摘要

Solid-state graphene oxide (GO) homogeneously incorporated silica gel glasses have been successfully fabricated, and the good nonlinear optical (NLO) response shown indicates its high potential as the optical limiting material to protect optical detectors and human eyes from damage caused by high power lasers. The GO sheets are covalently functionalized with 3- aminopropyltriethoxysilane and connected to the silica glass matrix through Si-O bonding, resulting in an increase in GO incorporation concentration up to 20.2 mol % (C/SiO2) without reaching the saturation limit. Digital images and element mapping analysis of carbon have confirmed the homogeneous dispersion of GO in the silica gel glass. Because of the higher two-photon absorption coefficient, lower NLO starting threshold, and optical limiting threshold shown at 532 nm wavelength, the NLO performance at this wavelength is better than at 1064 nm. At an input fluence as low as 1.3 J cm-2 at 532 nm and 2.3 J cm-2 at 1064 nm, the glass incorporated with 5.1 mol % GO starts to exhibit an NLO response, suggesting its potential as a laser optical limiting absorber. In addition to the discussion of the probable reasons behind the phenomenon, it has been demonstrated for the first time that the NLO performance of GO in solid-state silica gel glass is stronger than in deionized water.
机译:固态氧化石墨烯(GO)均质结合的硅胶玻璃已经成功制造,所显示的良好的非线性光学(NLO)响应表明其具有很高的潜力,可以作为光学限制材料来保护光学探测器和人眼免受高功率造成的损害激光。 GO片被3-氨基丙基三乙氧基硅烷共价官能化,并通过Si-O键连接到石英玻璃基质,导致GO掺入浓度增加到20.2 mol%(C / SiO2),而没有达到饱和极限。碳的数字图像和元素图分析已确认GO在硅胶玻璃中的均匀分散。由于在532 nm波长处显示出较高的双光子吸收系数,较低的NLO起始阈值和光学限制阈值,因此该波长下的NLO性能要好于1064 nm。在532 nm处的输入通量低至1.3 J cm-2且在1064 nm处的输入通量低至2.3 J cm-2时,掺有5.1 mol%GO的玻璃开始表现出NLO响应,表明其具有作为激光光学限制吸收剂的潜力。除了讨论该现象背后的可能原因外,首次证明了GO在固态硅胶玻璃中的NLO性能要强于去离子水。

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